首页> 外文会议>International conference on computational methods and experiments in materials charactersation >DYNAMIC MICRO-TESTING OVER A LARGE RANGE OF STRAIN RATES FOR HOMOGENOUS AND HETEROGENEOUS LOCAL MATERIAL CHARACTERIZATION
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DYNAMIC MICRO-TESTING OVER A LARGE RANGE OF STRAIN RATES FOR HOMOGENOUS AND HETEROGENEOUS LOCAL MATERIAL CHARACTERIZATION

机译:在大范围应变率上进行动态微观测试,以进行均质和异质局部材料表征

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The dynamic material characterization shows different macroscopic strain rate effects. The causal mechanisms cannot be identified at this level in most cases. Micro-tests allow a local transient analysis, which is illustrated in this article using the example of a long-fibre reinforced thermoplastic (LFRT). After a general introduction, the development and validation of a micro-test for a large strain rate range is presented. The validation explained for steel shows the advantage of the small sample for the dynamic characterization, if a homogenous material behaviour of this magnitude still exists, especially in the case of low-vibration force measurement. For a heterogeneous LFRT material, the micro-test shows strongly scattering test results that are no longer representative of the homogenized mechanical material behaviour, but reflect the local characteristics. These local properties are directly caused by the injection moulding process. Further SEM analyses of the samples indicate different macromolecular deformation mechanisms of the matrix at the different strain rates.
机译:动态材料表征显示出不同的宏观应变率效应。在大多数情况下,无法在此级别上确定因果机制。微观测试可以进行局部瞬态分析,本文以长纤维增强热塑性塑料(LFRT)为例进行了说明。全面介绍之后,介绍了针对大应变速率范围的微测试的开发和验证。如果仍然存在这种数量级的均质材料性能,尤其是在低振动力测量的情况下,对钢进行的验证表明,对于动态表征而言,使用小样本的优势。对于异质LFRT材料,微测试显示了强烈的散射测试结果,这些结果不再代表均质的机械材料性能,而是反映了局部特征。这些局部特性直接由注塑过程引起。样品的进一步SEM分析表明,在不同的应变速率下,基质的大分子变形机理也不同。

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